Evaluation of formation damages during filter cake deposition and removal process: The effect of primary damage on secondary damage
暂无分享,去创建一个
S. Patil | B. Bageri | Jaber Al Jaberi | A. Adebayo | Assad A. Barri | Rahul B. Salin | Jaber Al Jaberi
[1] B. Bageri,et al. A calibration method for estimating mudcake thickness and porosity using NMR data , 2020 .
[2] Hao Zhang,et al. Conceptual design and methodology for rheological control of water-based drilling fluids in ultra-high temperature and ultra-high pressure drilling applications , 2020 .
[3] G. Jiang,et al. Super-amphiphobic, strong self-cleaning and high-efficiency water-based drilling fluids , 2020, Petroleum Exploration and Development.
[4] P. Luo,et al. Investigation on influence of drilling unloading on wellbore stability in clay shale formation , 2020, Petroleum Science.
[5] S. Patil,et al. Effect of perlite particles on the filtration properties of high-density barite weighted water-based drilling fluid , 2020 .
[6] S. Patil,et al. Insight into Secondary Posterior Formation Damage During Barite Filter Cake Removal in Calcite Formations , 2020 .
[7] A. O. W. Neto,et al. A novel oil-in-water microemulsion as a cementation flushing fluid for removing non-aqueous filter cake , 2020 .
[8] M. S. Kamal,et al. A New Method To Evaluate Reaction Kinetics of Acids with Carbonate Rocks Using NMR Diffusion Measurements , 2020 .
[9] S. Patil,et al. Evaluation of secondary formation damage caused by the interaction of chelated barite with formation rocks during filter cake removal , 2019, Journal of Petroleum Science and Engineering.
[10] B. Bageri,et al. A simple NMR methodology for evaluating filter cake properties and drilling fluid-induced formation damage , 2019, Journal of Petroleum Exploration and Production Technology.
[11] M. Mahmoud. Well Clean-Up Using a Combined Thermochemical/Chelating Agent Fluids , 2019, Journal of Energy Resources Technology.
[12] Baojiang Sun,et al. Formation damage mechanisms associated with drilling and completion fluids for deepwater reservoirs , 2019, Journal of Petroleum Science and Engineering.
[13] X. Xing,et al. Minimizing the HTHP filtration loss of oil-based drilling fluid with swellable polymer microspheres , 2019, Journal of Petroleum Science and Engineering.
[14] Z. Vryzas,et al. Effect of Ferric Oxide Nanoparticles on the Properties of Filter Cake Formed by Calcium Bentonite-Based Drilling Muds , 2018, SPE Drilling & Completion.
[15] M. S. Kamal,et al. Evaluation of the Reaction Kinetics of Diethylenetriaminepentaacetic Acid Chelating Agent and a Converter with Barium Sulfate (Barite) Using a Rotating Disk Apparatus , 2018, Energy & Fuels.
[16] Jingping Liu,et al. Development of key additives for organoclay-free oil-based drilling mud and system performance evaluation , 2018, Petroleum Exploration and Development.
[17] B. Albijanic,et al. Influence of clays on fine particle filtration , 2018 .
[18] M. S. Kamal,et al. High molecular weight copolymers as rheology modifier and fluid loss additive for water-based drilling fluids , 2018 .
[19] R. Rafati,et al. Application of aluminium oxide nanoparticles to enhance rheological and filtration properties of water based muds at HPHT conditions , 2018 .
[20] Ali Ettehadi,et al. Extending thermal stability of calcium carbonate pills using sepiolite drilling fluid , 2017 .
[21] S. Elkatatny,et al. Modeling of Filter Cake Composition in Maximum Reservoir Contact and Extended Reach Horizontal Wells in Sandstone Reservoirs , 2017 .
[22] R. Shawabkeh,et al. Single stage filter cake removal of barite weighted water based drilling fluid , 2017 .
[23] K. A. Fattah,et al. Investigation of mud density and weighting materials effect on drilling fluid filter cake properties and formation damage , 2016 .
[24] M. Mahmoud,et al. Evaluation of Rock Mechanical Properties Alteration During Matrix Stimulation With Chelating Agents , 2016 .
[25] Michael L. Johns,et al. Pore-scale analysis of formation damage in Bentheimer sandstone with in-situ NMR and micro-computed tomography experiments , 2015 .
[26] M. Enamul Hossain,et al. Fundamentals of Sustainable Drilling Engineering: Hossain/Fundamentals , 2015 .
[27] H. Nasr-El-Din,et al. Removal of Manganese Tetraoxide Filter Cake Using a Combination of HCl and Organic Acid , 2014 .
[28] M. Mahmoud,et al. A New Diversion Technique to Remove the Formation Damage from Maximum Reservoir Contact and Extended Reach Wells in Sandstone Reservoirs , 2013 .
[29] Justin Green,et al. Use of Micro-CT Scanning Visualisations to Improve Interpretation of Formation Damage Laboratory Tests Including a Case Study From the South Morecambe Field , 2013 .
[30] Bin Liu,et al. Evaluation of damage to horizontal wells through equivalent horizontal well length , 2013 .
[31] B. Bageri,et al. Different Techniques for Characterizing the Filter Cake , 2013 .
[32] H. Nasr-El-Din,et al. Formation Damage Caused by Improper Mn3O4-Based Filter-Cake-Cleanup Treatments , 2013 .
[33] Li Wang,et al. High temperature and high pressure rheological properties of high-density water-based drilling fluids for deep wells , 2012, Petroleum Science.
[34] H. Nasr-El-Din,et al. A New Approach to Determine Filter Cake Properties of Water-Based Drilling Fluids , 2011 .
[35] Pavel Bedrikovetsky,et al. Theoretical Definition of Formation Damage Zone With Applications to Well Stimulation , 2010 .
[36] Mohamed Khodja,et al. Shale problems and water-based drilling fluid optimisation in the Hassi Messaoud Algerian oil field , 2010 .
[37] Liu Shujie,et al. Drilling fluid technology for horizontal wells to protect the formations in unconsolidated sandstone heavy oil reservoirs , 2010 .
[38] Mubarak Audah Al-dhufairi,et al. Lessons Learned from Stimulation Treatments and Filter Cake Removal Practices in High Permeability Carbonate Formations during the Drilling Phase , 2010 .
[39] Jie-nian Yan,et al. Experimental study of low-damage drilling fluid to minimize waterblocking of low-permeability gas reservoirs , 2009 .
[40] B. Ma,et al. Development and applications of solids-free oil-in-water drilling fluids , 2008 .
[41] H. Nasr-El-Din,et al. Removal of Filter Cake Formed by Manganese Tetraoxide-Based Drilling Fluids , 2008 .
[42] M. Alotaibi. Characteristics and removal of filter cake formed by formate-based drilling mud , 2008 .
[43] F. Civan,et al. Alteration of permeability by drilling fluid invasion and flow reversal , 2007 .
[44] H. Nasr-El-Din. Formation Damage Induced by Chemical Treatments: Case Histories , 2005 .
[45] M. A. Siddiqui,et al. Evaluation of Special Enzymes as a Means to Remove Formation Damage Induced by Drill -in Fluids in Horizontal Gas Wells in Tight Reservoirs , 2003 .
[46] A. J. Twynam,et al. A laboratory drilling mud overbalance formation damage study utilising cryogenic SEM techniques , 2000 .
[47] Fredd,et al. The Influence of Chelating Agents on the Kinetics of Calcite Dissolution. , 1998, Journal of colloid and interface science.
[48] Richard M. Hodge,et al. Evaluation and Selection of Drill-In-Fluid Candidates To Minimize Formation Damage , 1997 .